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    • 62. 发明授权
    • Stabilized gamma irradiated polyolefins
    • 稳定的γ照射聚烯烃
    • US06872764B2
    • 2005-03-29
    • US10372751
    • 2003-02-24
    • Roswell E. King, III
    • Roswell E. King, III
    • C08K5/16C08K5/51C08K5/3435C08K5/1535C08K5/3477
    • C08K5/16C08K5/51C08L23/02
    • Certain essentially phenol antioxidant-free stabilizer systems that comprise either a binary hindered amine/hydroxylamine or nitrone or amine oxide or benzofuranone system or a ternary hindered amine/hydroxylamine or nitrone or amine oxide or benzofuranone/organic phosphite or phosphonite system are especially effective towards protecting polyolefins against the deleterious effects of gamma irradiation. Polyolefin articles such as medical packaging, hospital garments, draperies, woven and non-woven fiber products, surgery utensils, blow-molded I.V. bottles, hypodermic syringes, needle shields, laboratory ware such as trays, funnels, Petri dishes and filters, and hygiene related articles may be sterilized with gamma irradiation and are stabilized according to the present invention.
    • 包含二元受阻胺/羟胺或硝酮或氧化胺或苯并呋喃酮体系或三元受阻胺/羟胺或硝酮或氧化胺或苯并呋喃酮/有机亚磷酸酯或亚膦酸盐体系的某些基本上无酚类抗氧化剂的稳定剂体系对于保护是特别有效的 聚烯烃抵抗γ照射的有害影响。 聚烯烃制品如医疗包装,医院服装,布帘,纺织和无纺布纤维制品,手术器具,吹塑成型I.V。 瓶子,皮下注射器,针罩,实验室用品如托盘,漏斗,培养皿和过滤器以及与卫生有关的物品可以用γ射线灭菌并且根据本发明是稳定的。
    • 67. 发明申请
    • Barrier material with nanosize metal particles
    • 阻挡材料与纳米尺寸金属颗粒
    • US20030129403A1
    • 2003-07-10
    • US10243620
    • 2002-09-13
    • CELLRESIN TECHNOLOGIES, LLC
    • Neil BeaversonWillard Wood
    • B05D001/36
    • B82Y30/00C08K3/08C08K5/09C08K5/16C08K2201/011C08L5/16Y10T428/2982Y10T428/2989
    • The incorporation of nanosized metal particles into cyclodextrin-containing material leads to a nullreactivenull barrier material having excellent barrier properties. Also, it has been found that the presence of nanosized metal or metal alloy particles in a barrier material such as thermoplastic material, wherein said material comprises cyclodextrin derivatives, may be advantageous in achieving excellent barrier properties. The barrier material of the present invention may provide improved barrier resistance to a variety of permeants and/or impurities. The diffusion of volatile substances through the barrier material may be prevented by adding compatible derivatized cyclodextrin and nanosized metal particles to the material used. Accordingly, the inventive material also is suitable for many applications including food-contact packaging, flexible packaging to dispose of adult and baby diapers, incontinent products, hospital and household waste and also for packaging pharmaceutical products, medical devices and dental materials.
    • 将纳米金属颗粒掺入含环糊精的材料中导致具有优异阻隔性能的“反应性”阻挡材料。 另外,已经发现纳米尺寸金属或金属合金颗粒在诸如热塑性材料的阻挡材料中的存在,其中所述材料包括环糊精衍生物可能有利于获得优异的阻隔性能。 本发明的阻隔材料可以提供对各种渗透剂和/或杂质的改善的阻隔性。 挥发性物质通过阻挡材料的扩散可以通过将相容的衍生的环糊精和纳米尺寸的金属颗粒加入到所用的材料中来防止。 因此,本发明的材料还适用于许多应用,包括食品接触包装,用于处理成人和婴儿尿布的柔性包装,失禁产品,医院和家庭废物以及用于包装药物产品,医疗装置和牙科材料。
    • 70. 发明授权
    • Thermal insulation material for subsea equipment
    • 海底设备保温材料
    • US06520261B1
    • 2003-02-18
    • US09677280
    • 2000-10-02
    • Dwight D. JanoffJohn C. Vicic
    • Dwight D. JanoffJohn C. Vicic
    • E21B3314
    • E21B41/0007C08K5/16C08K7/28E21B36/003Y10T428/25Y10T428/254C08L81/04
    • The invention is an insulation material comprising a novolac cured polysulfide polymer resin. The material is used as a thermal insulator for subsea gas and oil production equipment, such as pipes and wellhead equipment. In order to decrease the maximum exothermic temperature generated by the resin during curing, hollow glass beads are added to the resin. The amine content of the hardener in a standard resin was adjusted to further decrease the maximum exothermic temperature. A fumed silica thixotropic material was also added to increase the viscosity of the mixture. These modifications allow the material to be cast in thick sections without cracking, leaking, or excessive expansion during curing.
    • 本发明是一种包含酚醛清漆固化的聚硫化物聚合物树脂的绝缘材料。 该材料用作海底瓦斯和石油生产设备(如管道和井口设备)的绝热材料。 为了降低固化时树脂产生的最大放热温度,将中空玻璃珠添加到树脂中。 调整标准树脂中的硬化剂的胺含量以进一步降低最大放热温度。 还加入热解二氧化硅触变材料以增加混合物的粘度。 这些修改允许材料在厚的部分铸造,而不会在固化过程中产生开裂,泄漏或过度膨胀。